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Estuarine Processes

Estuarine Processes
Author: Martin Wiley
Publisher: Academic Press
Total Pages: 447
Release: 2014-05-10
Genre: Science
ISBN: 1483265420

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Estuarine Processes, Volume II: Circulation, Sediments, and Transfer of Material in the Estuary provides information pertinent to estuarine processes and focuses on dynamic interactions at several levels of organization. This book describes the effects of physical alterations on estuarial hydraulics, dissolved and particulate material support, and on aquatic biota. Organized into six parts encompassing 27 chapters, this volume begins with an overview of the historic changes in salinity balance in the estuarial zone of the Sacramento-San Joaquin Delta. This text then reviews the effect of enlargement of artificial waterway of the Chesapeake and Delaware Canal, which has resulted in substantial alterations of the physical hydrography, biotic populations and chemical environment of the canal and its approaches. Other chapters consider the elements in a mathematical model for estuarial sediment transport. This book discusses as well sediment transport rates in coastal waters. The final chapter deals with accurate estimates of fish abundance for models of many estuarine processes. This book is a valuable resource for ecologists, environmentalists, and scientists.


Physical Processes in Estuaries

Physical Processes in Estuaries
Author: Job Dronkers
Publisher: Springer Science & Business Media
Total Pages: 556
Release: 2012-12-06
Genre: Science
ISBN: 3642736912

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In Physical Processes in Estuaries the present day knowledge of the physics of transport phenomena in estuaries and their mathematical treatment is summarized: It is divided into following parts: - Water movements in estuaries - Estuarine fronts and river plumes - Internal waves and interface stability - Fine sediment transport, aggregation of particles, settling velocity of mud flocs - Sedimentation and erosion of fine sediments. For each topic an up-to-date review and recommendations for future research are given, followed by results of original studies. Since estuarine environments are the first to be threatened by urbanization and industrial exploitation this book is an important tool for students and researchers of environmental problems as well as for consultants and water authorities.


Estuarine Cohesive Sediment Dynamics

Estuarine Cohesive Sediment Dynamics
Author: Ashish J. Mehta
Publisher: Springer Science & Business Media
Total Pages: 480
Release: 2013-03-07
Genre: Science
ISBN: 1461249368

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The background for the Workshop on Cohesive Sediment Dynamics - . !!!!!. Special Reference to Physical Processes in Estuaries is briefly outlined in Chapter I. Here I wish to acknowledge those whose support I consider to be pivotal to this under taking. My deepest appreciation goes to Cynthia Vey, whose organizational skills and dedicated effort made the completion of this volume possible. Thanks are also due to Gail Terry for workshop organization, Jean Branson for word processing and Lillean Pieter for helping with drawings. Finally, I must express my sincere appreciation to Arthur Ezra 9f the National Science Foundation for providing support (through Grant No. CEE-8401185) for the workshop, and to Hsiang Wang for depart mental encouragement. With deepest regret, I must note the untimely death of Ranjan Ariathurai, 39, on June 5, 1985, before this volume could be published. He was a guiding force to many within the small group of researchers in cohesive sediment dynamics, and his professional brilliance and inspirational personal qualities constituted the true spirit . behind the workshop. I trust this volume will serve, albeit in a small way, as a fitting memory to this spirit, and to the remarkable professional contributions Ranjan made during his short career. Professor Ray B. Krone Professor Emmanuel Partheniades Department of Civil Engineering Department of Engineering Sciences University of California University of Florida Davis, California Gainesville, Florida TABLE OF CONTENTS CHAPTER PAGE I. INTRODUCTION Ashish J. Mehta •••••••••••••••••••••••••••••••••••••••••••••••••••• 1 II.


Coastal and Estuarine Fine Sediment Processes

Coastal and Estuarine Fine Sediment Processes
Author: William H. McAnally
Publisher: Gulf Professional Publishing
Total Pages: 546
Release: 2001
Genre: Medical
ISBN: 9780444504630

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Hardbound. The INTERCOH series of conferences bring together the world's leading researchers and practitioners in cohesive sediment transport processes to share recent insights. This book presents papers that examine the spectrum of fine sediment transport related science and engineering, including the basics and applications of flocculation, settling, deposition, and erosion, advanced numerical models used in engineering practice, and applications to mud flats and harbor siltation.


Estuarine and Coastal Hydrography and Sediment Transport

Estuarine and Coastal Hydrography and Sediment Transport
Author: R. J. Uncles
Publisher: Cambridge University Press
Total Pages: 363
Release: 2017-08-17
Genre: Nature
ISBN: 1108508723

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A practical guide to the latest remote and in situ techniques used to measure sediments, quantify seabed characteristics, and understand physical properties of water and sediments and transport mechanisms in estuaries and coastal waters. Covering a broad range of topics from global reference frames and bathymetric surveying methods to the use of remote sensing for determining surface-water variables, enough background is included to explain how each technology functions. The advantages and disadvantages of each technology are explained, and a review of recent fieldwork experiments demonstrates how modern methods apply in real-life estuarine and coastal campaigns. Clear explanations of physical processes show links between different disciplines, making the book ideal for students and researchers in the environmental sciences, marine biology, chemistry and geology, whose work relies on an understanding of the physical environment and the way it is changing as a result of climate change, engineering and other influences.


Transfer Processes in Cohesive Sediment Systems

Transfer Processes in Cohesive Sediment Systems
Author: W. R. Parker
Publisher: Springer Science & Business Media
Total Pages: 240
Release: 2012-12-06
Genre: Science
ISBN: 1468447637

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In the transfer of chemical species through the aquatic environment the association with fine sediment particles is often of crucial importance. The n~ture, permanence and kinetics of this association is, in many cases, unknown yet it is central to any effort concerned with predicting the pathways of pollutant transfer and the fluxes along them. It is often unclear to precisely what surface, if any, a pollutant is attached. The transfer of species between surfaces and solution may be chemically or biochemically controlled. These processes may take place within a host framework which has a time and space dependent structure. The natural straining of this framework resulting from physical and chemical processes moves porewater and the dissolved species in it. Thus, to adequately predict the natural transfer of species within a cohesive sediment system the physical, biochemical and chemical processes must be dynamically coupled. This informal colloquium examined topics relevant to the associ ation of pollutant and sediment. These included the mineral particle surfaces and the surrounding ionic associations, methods of describing the particles and the physical, chemical, biochemical and biological processes operating in association with fine sediment substrates. The physical processes of sediment transport were deliberately excluded.


Quantification of Sediment Bed - Water Column Exchange Processes in the South San Francisco Bay Estuary

Quantification of Sediment Bed - Water Column Exchange Processes in the South San Francisco Bay Estuary
Author: Steven Michael Gladding
Publisher:
Total Pages: 376
Release: 2011
Genre:
ISBN:

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The salinity gradient formed by the mixing of saline ocean waters and fresh river waters within estuaries forms diverse habitats and creates the conditions for highly dynamic sediment behavior. Sediments which enter the estuarine system may pass multiple times through the water column and sediment bed before finally being carried out to sea or deposited as a more permanent part of the sediment bed. The exchange of sediments between the water column and sediment bed is affected not only by physical forcing such as tides and winds but also be properties inherent to estuarine sediments including flocculation and consolidation. Like many others, the San Francisco Bay estuary has been highly impacted by human activities over the last 150 years. Faced with an ever changing environment, understanding how the estuary will be impacted in the future depends in part upon understanding how sediments move between the bed and water column. Two instrument deployments were carried out in the spring and fall of 2009 which measured suspended sediment concentrations, sediment bed properties and water column physical properties in the South San Francisco Bay. Analysis of the in situ measurements from the instrument deployments, sediment cores collected at the study site and results from a coupled sediment bed - water column numerical model of the instrument deployment period were used to estimate several important properties of sediments in the estuary. The depth of the layer of sediments readily resuspended from the bed was found to be less than 1 cm, an order of magnitude smaller than had been previously assumed. Acoustic Doppler velocimeters positioned near the bed were used to make collocated measurements of water velocity and suspended sediment concentrations (SSC). Turbulence data extracted from the velocity time series was used to develop sediment erosion relationships as a function of bed shear stress. Settling velocities were also estimated from the suspended sediment time series data. Upward looking acoustic Doppler current profilers were also deployed to measure water column velocities and collocated SSC. An error analysis showed that, with the proper information, the SSC calibrations produced reliable values. Results from the coupled sediment bed - water column model corroborated many of the results estimated from the experimental data. The results from this study provide several important estuary specific values for sediment exchange processes and demonstrate the need to use in situ measurements to test our mechanistic understanding of these processes.